@deepseek-ai/dsh-tool-bash
The model-facing bash tools — bash, bash_output, bash_kill — registered over the ctx.bash executor seam (@deepseek-ai/dsh-bash). Pure schema + text shaping; every process concern lives behind the seam, so sandboxed or remote executor implementations swap in without changing what the model sees.
Requires a loaded executor implementation (e.g. @deepseek-ai/dsh-bash-local); the plugin stays pending until ctx.bash exists (inject: ['tools', 'bash', 'systemPrompt']).
The plugin also contributes the tool:bash prompt section (order 105) — the cross-call habit the per-tool descriptions cannot carry: check the [exit code: N] marker on every result and investigate failures before moving on.
Tools
bash
| Arg | Type | Notes |
|---|---|---|
command |
string (required) | Run via bash -c. No state persists between calls — use workdir, not cd. |
description |
string (required) | One-line, active-voice summary of the command (5-10 words), for UI/log display only — no effect on execution. |
timeoutMs |
number | Timeout override in milliseconds. The executor applies its configured default and cap. |
workdir |
string | Working directory for this call. Defaults to the calling agent's session cwd (session.header.cwd) so each session runs in its own workspace; a relative workdir is resolved against that session cwd. |
run_in_background |
boolean | Return a task id immediately; no timeout applies. |
command, workdir, and timeoutMs are resolved against the executor's config defaults via ctx.bash.resolve() before execution, so the executor seam (BashExecSpec) receives explicit workdir/timeoutMs values. The workdir default is applied in the tool layer (from the calling agent's session.header.cwd) BEFORE resolve() — the per-session cwd must come from exec.agent, since N sessions share one executor; only when no session cwd is available does the executor fall back to its own config / process.cwd().
Result text: stdout, then a [stderr] section, then status markers — [timed out after Nms] whenever the executor's timer fired (reported independently of how the process ended, so a command that traps SIGTERM and exits 0 still shows it), [killed by signal: …] for a signal death, [exit code: N] for a non-zero exit (reported, not isError: the model decides how to react), and [output truncated; full output: <path>] when the tail was kept and a safe spill file is available. If the executor knows output was dropped but cannot safely advertise a complete spill file, the path is reported as (unavailable). Only infrastructure failures (spawn errors, aborts) surface as isError results.
bash_output
task_id → output produced since the previous bash_output call plus a status line (running / completed, exit code: N / killed). Reads that lost data to buffer bounds say so and point at the full-output spill file when one is safely available, otherwise (unavailable).
bash_kill
task_id → ask the executor to kill the background task. The concrete executor decides how to signal or stop the process; killing an already-finished task is a reported no-op, and unknown ids are errors.
Task ownership (cross-session isolation)
The owning agent's session token (session.header.id) is stamped onto the task at spawn — passed to the executor via resolve({ …, owner }) and stored ON THE TASK inside the executor (the dsh-bash ownerOf(id) seam), not in a plugin-local map. bash_output/bash_kill compare ctx.bash.ownerOf(id) to the caller's token (session.header.id) with !== undefined semantics and reject a task owned by a different session with task <id> belongs to another session (a task started with no agent — a non-loop caller — has no owner token and is open to anyone; a call with no exec.agent cannot access an owned task). Task ids are global and predictable, so under multi-session ACP this token check is the fence that stops one session's agent from reading or killing another session's background task. Because ownership lives on the task in the executor (disposed with the dsh-bash fiber), it survives an independent tool-bash HMR reload — closing the old plugin-local-map gap where a reload orphaned pre-reload tasks. (The onTaskDone listener is still effect-scoped to this plugin's apply, so a completion landing during the reload gap still drops its one notice — the pre-existing reload-gap drop — but the ownership fence itself is HMR-proof.)
UI presentation
These tools own how their calls render in a UI (an editor's tool-call card) via the dsh-tools presentCall/presentResult seam, each returning a card-tagged render intent — a UI never special-cases tool names. A FOREGROUND bash run declares a terminal card: presentCall returns { card: 'terminal', title, description?, cwd? } — the title is the exact command ("ls -la src"), the model-written description rides along (rendered ABOVE the card), and cwd comes from the model workdir when given (absolute as-is, relative for the UI bridge to resolve against the session cwd; else left for the bridge to fill from the session cwd) — and presentResult returns { card: 'terminal', title?, output?, exitCode?, signal? } carrying the raw output plus the parsed exitCode/signal, so a capable client (Zed) renders a terminal card with an exit-status pill. The result carries the raw output; the bridge DERIVES the ```console fenced fallback for a no-terminal-capability UI (the tool no longer encodes the fences itself), so the model-facing result text stays unfenced. A run_in_background call is NOT a terminal (it returns a task id immediately and never streams a terminal — poll with bash_output) and instead returns a generic card ({ card: 'generic', title, kind: 'execute', rawInput: command, content: [description] }); an isError result (spawn failure / abort) likewise returns a generic result view with no exit pill (there is no real process exit). bash_output/bash_kill return a generic card with a task-scoped title ("Read output from background task bash-3" / "Kill background task bash-3") and the task id as rawInput. These methods are pure/display-only (they also run on session/load replay), and a malformed/older logged arg shape falls back to a generic presentation rather than throwing. See packages/core/tools ("Tool-owned UI presentation") and packages/ui/acp ("Terminal card" / "Tool-call presentation").
Background completion notices
When a background task finishes, a short notice is injected into the owning agent's session (agent.inject(), source {kind: 'plugin', plugin: 'tool-bash'}). The owning agent is found by its session token: the listener reads ctx.bash.ownerOf(task.id) and scans ctx.get('agents')?.list() for an agent whose session.header.id matches (read via ctx.get — onTaskDone runs on the bash fiber, a foreign fiber, so the ctx.agents proxy would throw). If no live agent carries that token — e.g. the owning session disconnected and its agent was disposed while the task ran on — the notice is dropped cleanly. Injection is durable context for the next model request, not a wake-up — an idle agent stays idle until something sends a message. That's why the tool descriptions tell the model to poll with bash_output.
The tool builds its request from named args only
The BashExecRequest seam carries optional stdin and env, used by the hooks bridges to feed a hook command its JSON payload and CLAUDE_* env. This tool does not expose them as parameters: its request is built from command/workdir/timeoutMs/signal/owner only, so a model that includes env or stdin keys in its tool arguments has them ignored. This is not a trust boundary — a model already has equivalent power through shell syntax (FOO=bar cmd, a heredoc), and the real defense against leaking the harness's ambient secrets is dsh-bash-local's credential scrub, which works regardless. A regression guard drives the real tool with those extra args and asserts the resulting request carries neither field — its job is to catch a future refactor that blindly spreads ...args into the request (which would silently forward model input into the post-scrub env merge), not to defend a wall. See the bash-stdin-env RFC.
Permissions
TODO(permissions): commands run with the executor's full authority. The permission/sandbox seam is the tools/pre-execute waterfall (deny or ask) plus sandboxing BashExecutor implementations — see docs/architecture.md. @cordisjs/plugin-capability (a named-permission service with a session test()) is a candidate building block for that work.